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The fate of 13C-labelled and non-labelled inulin predisposed to large bowel fermentation in rats

journal contribution
posted on 2023-05-03, 14:37 authored by Christine Butts, Gunaranjan Paturi, Michael Tavendale, Duncan Hedderley, Halina Stoklosinski, Thanuja Herath, Douglas Rosendale, Nicole Roy, John Munro, Juliet Ansell
The fate of stable-isotope 13C labelled and non-labelled inulin catabolism by the gut microbiota was assessed in a healthy rat model. Sprague–Dawley male rats were randomly assigned to diets containing either cellulose or inulin, and were fed these diets for 3 days. On day (d) 4, rats allocated to the inulin diet received 13C-labelled inulin. The rats were then fed the respective non-labelled diets (cellulose or inulin) until sampling (d4, d5, d6, d7, d10 and d11). Post feeding of 13C-labelled substrate, breath analysis showed that 13C-inulin cleared from the host within a period of 36 hours. Faecal 13C demonstrated the clearance of inulin from gut with a 13C excess reaching maximum at 24 hours (d5) and then declining gradually. There were greater variations in caecal organic acid concentrations from d4 to d6, with higher concentrations of acetic, butyric and propionic acids observed in the rats fed inulin compared to those fed cellulose. Inulin influenced caecal microbial glycosidase activity, increased colon crypt depth, and decreased the faecal output and polysaccharide content compared to the cellulose diet. In summary, the presence of inulin in the diet positively influenced large bowel microbial fermentation.

History

Rights statement

© The Royal Society of Chemistry 2016

Language

  • English

Does this contain Māori information or data?

  • No

Publisher

Royal Society of Chemistry

Journal title

Food and Function

ISSN

2042-6496

Citation

Butts, C. A., Paturi, G., Tavendale, M. H., Hedderley, D., Stoklosinski, H. M., Herath, T. D., Rosendale, D., Roy, N. C., Monroad, J. A., & Ansellad, J. (2016). The fate of 13C-labelled and non-labelled inulin predisposed to large bowel fermentation in rats. Food & Function, 7(4), 1825-1832. DOI:10.1039/C5FO01056J

Funder

Plant and Food Research||Ministry of Business Innovation & Employment

Contract number

A17819

Job code

11316

Report number

FBP 56561

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